Petritis K, Chaimbault P, Elfakir C, Dreux M
Institut de Chimie Organique et Analytique, CNRS UPRES-A, Université d'Orléans, France.
J Chromatogr A. 2000 Oct 27;896(1-2):253-63. doi: 10.1016/s0021-9673(00)00582-3.
The analysis of the 20 underivatized protein amino acids by liquid chromatography ionspray tandem mass spectrometry is investigated in positive ion mode. First, by direct infusion, amino acid fragmentation was investigated based on the product-ion mass spectrum of the parent compound in three different collision energies (10, 20, 30 eV). Then, the relative abundance of fragment ions was studied as a function of the collision energy in order to select the product ion with the highest abundance and to obtain the maximum sensitivity for each amino acid, by using the optimum collision energy. Depending on the amino acid, the loss of H2O or NH3 or CH2O2 was selected as the product ion from the molecular ion [M+H]+ in selective reaction monitoring mode. 15 eV was chosen as a mean value of collision energy to obtain satisfactory sensitivity for the simultaneous determination of the 20 protein amino acids. In spite of the specificity of mass spectrometry, and in order to obtain maximum sensitivity, several pairs of amino acids had to be separated. The separation of these amino acids pairs was achieved in less than 20 min by using a porous graphitic carbon column and nonafluoropentanoic acid as ion-pairing reagent. Detection limits depending on the amino acid varied from 500 fmol to 40 pmol (using a 10 microl loop).
采用液相色谱离子喷雾串联质谱法在正离子模式下对20种未衍生化的蛋白质氨基酸进行分析。首先,通过直接进样,基于母体化合物在三种不同碰撞能量(10、20、30 eV)下的产物离子质谱研究氨基酸的碎片化情况。然后,研究碎片离子的相对丰度作为碰撞能量的函数,以便通过使用最佳碰撞能量选择丰度最高的产物离子并获得每种氨基酸的最大灵敏度。根据氨基酸的不同,在选择性反应监测模式下,从分子离子[M+H]+中选择H2O或NH3或CH2O2的损失作为产物离子。选择15 eV作为碰撞能量的平均值,以获得同时测定20种蛋白质氨基酸的满意灵敏度。尽管质谱具有特异性,但为了获得最大灵敏度,仍需分离几对氨基酸。使用多孔石墨化碳柱和全氟戊酸作为离子对试剂,在不到20分钟的时间内实现了这些氨基酸对的分离。根据氨基酸的不同,检测限在500 fmol至40 pmol之间变化(使用10微升定量环)。